Patents by Inventor Joshua Marks

Joshua Marks has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 11331103
    Abstract: An example occlusive implant is disclosed. The example occlusive implant includes an expandable framework configured to shift between a collapsed configuration and an expanded configuration, wherein the expandable framework includes a plurality of strut members circumferentially spaced around a longitudinal axis of the expandable framework, wherein one or more of the plurality of strut members includes a first twisted portion and a face portion. The occlusive implant also includes a plurality of fixation members disposed along the face portion of one or more of the plurality of strut members.
    Type: Grant
    Filed: March 25, 2019
    Date of Patent: May 17, 2022
    Assignee: Boston Scientific Scimed, Inc.
    Inventors: Joshua Mark Inouye, Brian Joseph Tischler
  • Patent number: 11331104
    Abstract: An example system for detecting leakage around an occlusive implant disposed in the left atrial appendage includes an elongate shaft having a port disposed at a distal end region thereof and a first sensor disposed adjacent the elongate shaft. The elongate shaft is configured to be positioned adjacent the occlusive implant such that the first sensor is positioned on a first side of the occlusive implant and the port is positioned on a second side of the occlusive implant. Further, the first sensor is configured to measure a first parameter and the first parameter is utilized to determine a fluid leak between the occlusive implant and a tissue wall defining the left atrial appendage.
    Type: Grant
    Filed: May 1, 2019
    Date of Patent: May 17, 2022
    Assignee: Boston Scientific Scimed, Inc.
    Inventors: Joshua Mark Inouye, Alex Pflugfelder, Brian T. Berg, David John Onushko, James M. Anderson, Markus Petteri Lohi
  • Publication number: 20220142650
    Abstract: An example occlusive implant is disclosed. The example occlusive implant includes an expandable framework including a height and a plurality of support members defining a proximal end region of the expandable framework and a central hub member attached to the plurality of support members. Additionally, the expandable framework is configured to shift between a first configuration and a second configuration, wherein the height of the expandable framework remains substantially the same in both the first configuration and the second configuration. Further, the central hub member is configured to shift relative to the proximal end region while the expandable framework shifts between the first configuration and the second configuration.
    Type: Application
    Filed: January 27, 2022
    Publication date: May 12, 2022
    Applicant: BOSTON SCIENTIFIC SCIMED, INC.
    Inventor: Joshua Mark Inouye
  • Patent number: 11320692
    Abstract: Systems and methods for providing a display for an electronic device that includes a liquid crystal display panel assembly, a backlight assembly that includes a light source, and a spatially varying polarizer that provides phase retardation that varies as a function of propagation length away from the light source. The display may also include a linear polarizer and other optical components that improve the efficiency of the backlight assembly, thereby reducing power consumption, cost, space requirements, and provide other advantages.
    Type: Grant
    Filed: February 1, 2021
    Date of Patent: May 3, 2022
    Assignee: Valve Corporation
    Inventor: Joshua Mark Hudman
  • Publication number: 20220125997
    Abstract: Example medical devices and methods of making example medical devices are disclosed. An example medical device includes a frame configured to be secured to cardiac tissue, wherein the frame includes a fatigue resistant nickel-titanium alloy that is heat set at a temp in the range of 450-550 degrees Celsius.
    Type: Application
    Filed: October 27, 2021
    Publication date: April 28, 2022
    Applicant: BOSTON SCIENTIFIC SCIMED, INC.
    Inventors: JOSHUA MARK INOUYE, BRIAN T. BERG, GRAHAM KRUMPELMANN, TED WILLIAM PELZER, KELSEY RAE COOPER
  • Publication number: 20220129744
    Abstract: A method performed by a processor for permuting dimensions of a multi-dimensional tensor is described. The multi-dimensional tensor contains an array of tensor values in three or more dimensions that are stored in a first storage unit. The array of tensor values is transferred from the first storage unit to a second storage unit by reading tensor values from the first storage that are arrayed along a first dimension of the multi-dimensional tensor and writing the corresponding tensor values to the second storage in locations corresponding to a second dimension of the multi-dimensional tensor. The dimensions of the multi-dimensional tensor may be further permuted by a programmable engine within the processor.
    Type: Application
    Filed: October 26, 2020
    Publication date: April 28, 2022
    Inventors: Anton BONDARENKO, Anil Kumar METLA, Robert David HUGHES, Joshua Mark Jian Li SLATER
  • Patent number: 11314323
    Abstract: Systems and methods for tracking the position of a head-mounted display (HMD). The HMD may include a support structure that carries a forward facing camera and a plurality of optical flow sensor integrated circuits (ICs). The forward camera captures image sensor data in a forward camera field of view (FOV) at a first frame rate, and each of the plurality of sensor ICs captures image sensor data in a respective plurality of sensor IC FOVs at a second frame rate. The sensor IC FOVs may collectively cover at least a substantial portion of the forward camera FOV. A processor may receive the image sensor data from the camera and the plurality of sensor ICs. The processor may process the received image sensor data and/or other sensor data (e.g., IMU data) to track a position of the head-mounted display based on the processing of the received sensor data.
    Type: Grant
    Filed: January 22, 2021
    Date of Patent: April 26, 2022
    Assignee: Valve Corporation
    Inventor: Joshua Mark Hudman
  • Publication number: 20220043267
    Abstract: Methods and systems relating generally to information displays, and more particularly to systems and methods for backlight assemblies for information displays that emit an angularly narrow cone of light. A backlight assembly that emits a narrow angular cone of light can be particularly beneficial in a head-mounted display configuration, such as for use as part of virtual reality or augmented reality systems, where the head-mounted display comprises a lens assembly that directs light from an information display to the eyes of the user. Such a backlight assembly configuration may help reduce undesirable visual effects like flood illumination, ghost images, glare, and scattering.
    Type: Application
    Filed: July 22, 2021
    Publication date: February 10, 2022
    Inventor: Joshua Mark Hudman
  • Patent number: 11240904
    Abstract: Provided is an apparatus for and method of controlling formation of droplets (102a, b) used to generate EUV radiation that comprise an arrangement producing a laser beam directed to an irradiation region and a droplet source. The droplet source (92) includes a fluid exiting an nozzle (98) and a sub-system having an electro-actuatable element (104) producing a disturbance in the fluid (96). The droplet source produces a stream (100) that breaks down into droplets that in turn coalesce into larger droplets as they progress towards the irradiation region. The electro-actuatable element is driven by a hybrid waveform that controls the droplet generation/coalescence process. Also disclosed is a method of determining the transfer function for the nozzle.
    Type: Grant
    Filed: January 3, 2019
    Date of Patent: February 1, 2022
    Assignee: ASML Netherlands B.V.
    Inventors: Joshua Mark Lukens, Bob Rollinger, Pooriya Beyhaghi
  • Patent number: 11234706
    Abstract: An example occlusive implant is disclosed. The example occlusive implant includes an expandable framework including a height and a plurality of support members defining a proximal end region of the expandable framework and a central hub member attached to the plurality of support members. Additionally, the expandable framework is configured to shift between a first configuration and a second configuration, wherein the height of the expandable framework remains substantially the same in both the first configuration and the second configuration. Further, the central hub member is configured to shift relative to the proximal end region while the expandable framework shifts between the first configuration and the second configuration.
    Type: Grant
    Filed: February 14, 2019
    Date of Patent: February 1, 2022
    Assignee: Boston Scientific Scimed, Inc.
    Inventor: Joshua Mark Inouye
  • Publication number: 20220011998
    Abstract: The disclosure relates generally to techniques for determining pupil location of a display device's user via imaging sensors on the display device, and using that information to verify and/or correct positioning of the display device or its internal components. The display device may be a head-mounted display (“HMD”) device with display panels separated from a wearer's eyes via intervening lenses, with the sensors including optical flow sensor integrated circuits mounted on or near at least one of the display panels to capture images of the wearer's eye locations through the lenses, and with the correction to the positioning including modifications to the alignment or other positioning of the HMD device on the wearer user's head and/or its internal components within the HMD device (e.g., based on automated control of motors on the HMD device) to reflect a target alignment of the wearer's eyes relative to displayed information.
    Type: Application
    Filed: July 21, 2021
    Publication date: January 13, 2022
    Inventors: Joshua Mark Hudman, Jeremy Adam Selan
  • Publication number: 20220000488
    Abstract: An example medical device for occluding the left atrial appendage is disclosed. The example medical device for occluding the left atrial appendage includes an expandable member having a first end region, a second end region and an inflation cavity. The example medical device includes at least one fixation member having a first end and a second end coupled to the expandable member. The at least one fixation member is configured to move from a delivery configuration to a deployed configuration in response to an expansion of the expandable member. Additionally, the example medical device includes a valve member extending at least partially into the inflation cavity and the expandable member is configured to expand and seal the opening of the left atrial appendage.
    Type: Application
    Filed: September 15, 2021
    Publication date: January 6, 2022
    Applicant: BOSTON SCIENTIFIC SCIMED, INC.
    Inventors: James M. Anderson, Uchenna Junior Agu, David John Onushko, Lloyd Radman, Jose A. Meregotte, John M. Edgell, David Raab, Joshua Mark Inouye
  • Publication number: 20210392733
    Abstract: Disclosed is a system for generating EUV radiation in which current flowing through target material in the orifice 320 of a nozzle in a droplet generator is controlled by providing alternate lower impedance paths for the current and/or by limiting a high frequency component of a drive signal applied to the droplet generator.
    Type: Application
    Filed: October 25, 2019
    Publication date: December 16, 2021
    Inventors: Bob Rollinger, Georgiy Olegovich Vaschenko, Chirag Rajyaguru, Alexander Igorevich Ershov, Joshua Mark Lukens, Mathew Cheeran Abraham
  • Patent number: 11123079
    Abstract: An example medical device for occluding the left atrial appendage is disclosed. The example medical device for occluding the left atrial appendage includes an expandable member having a first end region, a second end region and an inflation cavity. The example medical device includes at least one fixation member having a first end and a second end coupled to the expandable member. The at least one fixation member is configured to move from a delivery configuration to a deployed configuration in response to an expansion of the expandable member. Additionally, the example medical device includes a valve member extending at least partially into the inflation cavity and the expandable member is configured to expand and seal the opening of the left atrial appendage.
    Type: Grant
    Filed: June 7, 2019
    Date of Patent: September 21, 2021
    Assignee: Boston Scientific Scimed, Inc.
    Inventors: James M. Anderson, Uchenna Junior Agu, David John Onushko, Lloyd Radman, Jose A. Meregotte, John M. Edgell, David Raab, Joshua Mark Inouye
  • Publication number: 20210254861
    Abstract: Solar receivers including a plurality of multi-scale solar absorbing surfaces arranged such that light or heat reflected from or emitted from one or more of the plurality of solar absorbing surfaces impinges one or more other solar absorbing surfaces of the solar receiver. The disclosed receivers increase the amount of absorbed energy from a concentrated light source, such as a heliostat field, and reduce radiative and convective heat losses.
    Type: Application
    Filed: February 2, 2021
    Publication date: August 19, 2021
    Inventors: Clifford K. Ho, Joshua Mark Christian, John Downing Pye, Jesus Daniel Ortega
  • Patent number: 11093208
    Abstract: The disclosure relates generally to techniques for determining pupil location of a display device's user via imaging sensors on the display device, and using that information to verify and/or correct positioning of the display device or its internal components. The display device may be a head-mounted display (“HMD”) device with display panels separated from a wearer's eyes via intervening lenses, with the sensors including optical flow sensor integrated circuits mounted on or near at least one of the display panels to capture images of the wearer's eye locations through the lenses, and with the correction to the positioning including modifications to the alignment or other positioning of the HMD device on the wearer user's head and/or its internal components within the HMD device (e.g., based on automated control of motors on the HMD device) to reflect a target alignment of the wearer's eyes relative to displayed information.
    Type: Grant
    Filed: February 1, 2019
    Date of Patent: August 17, 2021
    Assignee: Valve Corporation
    Inventors: Joshua Mark Hudman, Jeremy Adam Selan
  • Publication number: 20210247556
    Abstract: Improved illumination optics for various applications. The illumination optics may include an optical beam spreading structure that provides a large spread angle for an incident collimated beam or provides finer detail or resolution compared to convention diffractive optical elements. The optical beam spreading structure may include first and second spatially varying polarizers that are optically aligned with each other. The first and second spatially varying polarizers may be formed of a liquid crystal material, such as a multi-twist retarder (MTR). The first and second spatially varying polarizers may diffract light of orthogonal polarization states, which allows for different diffraction patterns to be used in a single optical structure. The two patterns may provide a combined field of view that is larger than either of the first and second fields of view or may provide finer detail or resolution than the first or second fields of view can provide alone.
    Type: Application
    Filed: February 8, 2021
    Publication date: August 12, 2021
    Inventors: Joshua Mark Hudman, Kameron Wade Rausch
  • Publication number: 20210247612
    Abstract: The present disclosure is related generally to techniques for improving the performance and efficiency of display systems, such as laser scan beam display systems or other types of display systems (e.g., micro-displays) of an HMD system or other device. Display systems of the present disclosure may utilize polarization multiplexing that allow for improved optimization of diffraction optics. In at least some implementations, a display system may selectively polarize light dependent on wavelength (e.g., color) or field of view. An optical combiner may include polarization sensitive diffractive optical elements that are each optimized for a subset of colors or portions of an overall field of view, thereby providing improved correction optics for a display system.
    Type: Application
    Filed: February 2, 2021
    Publication date: August 12, 2021
    Inventor: Joshua Mark Hudman
  • Publication number: 20210247646
    Abstract: Systems and methods for providing a polarization recycling structure for use in applications, such as display systems that include a liquid crystal display assembly. The polarization recycling structure may include a first spatially varying polarizer spaced apart from a second spatially varying polarizer. The first spatially varying polarizer may include a lens array that receives light from a light source and focuses light of a first polarization state and passes light of a second polarization state. The second spatially varying polarizer receive light from the first spatially varying polarizer, passes the focused light of the first polarization state, and transforms the light of the second polarization state into the first polarization state, thereby providing only light of the first polarization state at the output of the polarization recycling structure.
    Type: Application
    Filed: February 5, 2021
    Publication date: August 12, 2021
    Inventor: Joshua Mark Hudman
  • Publication number: 20210247611
    Abstract: The present disclosure relates generally to techniques for improving the performance and efficiency of optical systems, such as optical systems for using head-mounted display system. The optical systems of the present disclosure may include polarized catadioptric optics, or “pancake optics,” which utilize a wire grid polarizer as a reflective polarizer. Wire grid polarizers may not perform uniformly over wavelength or over varying angles of incidence. To improve performance, a spatially varying polarizer is provided in the optical system that operates to provide polarization compensation for the wire grid polarizer so that the wire grid polarizer performs more uniformly over wavelength and/or over incidence angles (e.g., on-axis and off-axis). The spatially varying polarizer may be formed of a liquid crystal material, such as a multi-twist retarder.
    Type: Application
    Filed: February 2, 2021
    Publication date: August 12, 2021
    Inventor: Joshua Mark Hudman